Sintered composite medium and filter

4687579
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Inventors

Bergman, Werner

Application #

859166

Filed

May-2-1986

Published

Aug-18-1987

Current US Class

055/497
055/498
055/500
055/521
055/523
055/527
210/347
210/493.1
210/496
210/497.01
376/314
428/357
428/398

International Classes

B01D 029/24

Field of Search

55/523 55/498 55/500 55/521 55/497 55/527 428/357 428/398 210/347 210/496 210/497.01 210/493.1

Assignee

The United States of America as represented by the United States (Washington, DC)

Examiners

Nozick; Bernard

Attorney, Agent or Firm

Sartorio; Henry P., Carnahan; L. E., Hightower; Judson R.

US Patent References

4043775   Air lock filter system
4114794   Method of autogeno...
4122015   Fortified metal filter...

Referenced by:

View Backward References

Other References

Synthetic Fibers in Paper Making-Battista, O. A. Interscience-John Wiley, New York, 6/23/64, pp. 178, 186, 195.

Citation

Cite This Patent

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Abstract
A particulate filter medium is formed of a sintered composite of 0.5 micron diameter quartz fibers and 2 micron diameter stainless steel fibers. A preferred composition is about 40 vol. % quartz and about 60 vol. % stainless steel fibers. The media is sintered at about 1100.degree. C. to bond the stainless steel fibers into a cage network which holds the quartz fibers. High filter efficiency and low flow resistance are provided by the smaller quartz fibers. High strength is provided by the stainless steel fibers. The resulting media has a high efficiency and low pressure drop similar to the standard HEPA media, with tensile strength at least four times greater, and a maximum operating temperature of about 550.degree. C. The invention also includes methods to form the composite media and a HEPA filter utilizing the composite media. The filter media can be used to filter particles in both liquids and gases.
 
Claims
I claim:

1. A filter media comprising a sintered composite of quartz fibers and stainless steel fibers having a filter efficiency of at least about 99.99% for 0.3 micron diameter particles, an operative temperature up to about 550.degree. C., and flow resistance comparable to and tensile strength at least four times that of a standard high efficiency particulate air filter media.

2. The filter media of claim 1, wherein the stainless steel fibers are fused together to form a random three-dimensional cage structure, and the quartz fibers are mechanically held in a random orientation within the cage structure.

3. The filter media of claim 1, wherein the quartz and stainless steel fibers have been sintered at a temperature of about 1100.degree. C.



Description
BACKGROUND OF THE INVENTION

The invention relates to particulate filter media and its use in particulate filters for either gas or liquid filtration, especially to high efficiency particulate air (HEPA) filters.

High efficiency particulate air HEPA filters are utilized in a number of different industries including the nuclear industry to prevent chemical contamination. For various applications the filter should operate at high temperatures and have hign strength. The filter should have high efficiency at high flow rates. The filter design should also be as compact as possible to lessen the impact on the overall system design.

Presently, there are no commercially available particulate filters which have high efficiency, low flow resistance, high strength and high temperature resistance. Currently available filters generally have two or three of these characteristics but not all four. For example, reinforced membrane filters have high efficiency, reasonable flow resistance and high strength, but are destroyed at temperatures above about 200.degree.-250.degree. C., depending upon the composition. The standard glass fiber media used in high efficiency particulate air (HEPA) filters has a high efficiency and low flow resistance, but has low strength and low temperature (below 300.degree. C.) resistance.
 
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